KEGG   Edwardsiella sp. LADL05-105: AAZ33_03565
Entry
AAZ33_03565       CDS       T04005                                 
Symbol
accA
Name
(GenBank) acetyl-CoA carboxylase carboxyl transferase subunit alpha
  KO
K01962  acetyl-CoA carboxylase carboxyl transferase subunit alpha [EC:6.4.1.2 2.1.3.15]
Organism
edl  Edwardsiella sp. LADL05-105
Pathway
edl00061  Fatty acid biosynthesis
edl00620  Pyruvate metabolism
edl00640  Propanoate metabolism
edl00720  Other carbon fixation pathways
edl01100  Metabolic pathways
edl01110  Biosynthesis of secondary metabolites
edl01120  Microbial metabolism in diverse environments
edl01200  Carbon metabolism
edl01212  Fatty acid metabolism
Module
edl_M00082  Fatty acid biosynthesis, initiation
Brite
KEGG Orthology (KO) [BR:edl00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00620 Pyruvate metabolism
    AAZ33_03565 (accA)
   00640 Propanoate metabolism
    AAZ33_03565 (accA)
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    AAZ33_03565 (accA)
  09103 Lipid metabolism
   00061 Fatty acid biosynthesis
    AAZ33_03565 (accA)
Enzymes [BR:edl01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.3  Carboxy- and carbamoyltransferases
    2.1.3.15  acetyl-CoA carboxytransferase
     AAZ33_03565 (accA)
 6. Ligases
  6.4  Forming carbon-carbon bonds
   6.4.1  Ligases that form carbon-carbon bonds (only sub-subclass identified to date)
    6.4.1.2  acetyl-CoA carboxylase
     AAZ33_03565 (accA)
SSDB
Motif
Pfam: ACCA Carboxyl_trans Med9
Other DBs
NCBI-ProteinID: AKR76933
UniProt: A0AAC8V7W9
LinkDB
Position
796853..797812
AA seq 319 aa
MSLNFLDFEQPIAELEAKIDSLNALSRQDEKLDINIDEEVQRLREKSVELTRKIFADLGA
WQIAQLARHPRRPYTLDYLQHIFTDFDELAGDRAYADDKAIVGGTARLDGRPVMVIGHQK
GRETKEKIRRNFGMPAPEGYRKALRLMEMAERFNLPIITFIDTPGAYPGVGAEERGQSEA
IARNLREMSGLKVPVICTVIGEGGSGGALAIGVGDKVNMLQYSTYSVISPEGCASILWKS
ADKAPLAAEAMGITAPRLQELKLIDSVISEPLGGAHRDPQAMAASLKAQLLSDLGELDTL
EKEELLDRRYQRLMNYGYC
NT seq 960 nt   +upstreamnt  +downstreamnt
atgagtctgaattttctggattttgaacagccgattgccgaacttgaagcgaagatcgat
tcgctgaacgctctcagccgtcaagacgaaaaattggatattaatatcgacgaggaggtt
cagcgcctgcgtgagaagagcgttgagctgacccgtaagatttttgccgatctgggagcc
tggcagattgcccagctggcgcgtcatccgcgccgcccctataccctggattatcttcag
catatcttcaccgacttcgatgagctggccggcgatcgcgcctacgccgacgacaaggcg
attgtcggtggcacggcacgtctggacggccgtccggtgatggtgattggccatcagaaa
gggcgcgagaccaaagagaagatccgccgtaacttcggcatgccggcgccggagggctac
cgtaaggccttgcgcctgatggagatggccgagcgctttaacctgccgatcatcaccttt
atcgataccccgggcgcctatccgggggtgggggcagaagagcgcggtcagtctgaggct
atcgcacgtaacctgcgcgagatgtctgggctgaaggtgccggtcatctgcacggtgatc
ggcgaaggcggttccggcggcgcgctggctatcggggttggcgataaggtcaacatgctg
cagtacagcacctactcggtgatctcaccggaaggatgcgcatctatcctgtggaagagc
gccgacaaggcgccgctggccgcggaagcgatgggcatcaccgcgccgcgcttacaggag
ctgaagctgatcgattcggtgatctcggagccgctgggcggcgcccaccgcgatccgcag
gcgatggcggcgagcctgaaggcccagctgctgtccgatctgggggagctggatacccta
gaaaaagaagagctgctcgaccgtcgctatcagcgtctgatgaactacggttactgctga

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